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Self-excited vibrations counteraction in machine tool - cutting process system using controllable eliminator of vibration

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Konferencja
International Conference on Active Noise and Vibration Control Methods (7 ; 08-12.06.2005 ; Wigry, Polska)
Języki publikacji
EN
Abstrakty
EN
In the paper, the results of simulation investigations on the application of a semi-active vibration eliminator for suppression of machining chatter are presented. First, the idea of a semi-active vibration eliminator arranged in the "machine tool - cutting process" system (MT-CP) is presented. Next, the results of the identification process of parameters of this system are shown. Properties of the mass-damping-spring system of the machine tool were estimated during the modal testing. A mechanistic model of the cuttingprocess was built on the basis of results of cutting tests. Two control algorithms have been tested: one with the time-invariant model of disturbances (MD) and another with the adaptive model of disturbances. Estimation of the eliminator effectiveness in the suppression of self-excited vibrations in a MT-CP system is also included.
Rocznik
Strony
189--202
Opis fizyczny
Bibliogr. 14 poz., rys., tab., wykr
Twórcy
autor
autor
autor
  • Institute of Manufacturing Engineering Technical University of Szczecin, Piastów 19, 70-310 Szczecin, Poland
Bibliografia
  • 1. ALTER D.M., TSAO T.C, Stability in turning process with actively controlled linear motor feed drives, ASME Journal of Engineering for Industry, 116, 298-307, 1994.
  • 2. CHODZKO M., POWALKA B., Analiza położenia biegunów jako metoda oceny wibrosta-bilności systemu obrabiarka - proces skrawania, VIII Szkoła Analizy Modalnej, Kraków, 2003.
  • 3. EHMANN K.F., KAPOOR S.G., DEVOR R.E., LAZOGLU I., Machining process modeling: a review, ASME Journal of Manufacturing Science and Engineering, 119, 655-663, 1997.
  • 4. ESMA S., MARUI E., Suppression of chatter vibration of boring tools using impact dampers, Int. Journal of Machine Tools and Manufacture, 4, 1141-1151, 2000.
  • 5. INAMURA T., SATO T., Stability analysis of cutting under varying spindle speed, Annals of CIRP, 23, 2, 119-120, 1974.
  • 6. JEMIELNIAK K., WIDOTA A., Suppression of self-excited vibration by the spindle speed variation method, Int. Journal of Machine Tool Design and Research, 24, 119-120, 1984.
  • 7. LIAO Y.S., YOUNG Y.C., A new online spindle speed regulation strategy for chatter control, International Journal of Machine Tool Manufacture, 36, 651-660, 1996.
  • 8. MIZUNO T., ARAKI K., Active dynamic vibration absorber with automatic frequency tracking, Transaction Japan Society of Mechanical Engineers, Series C, 41, 3, 378-383, 1998.
  • 9. PAJOR M., CHODZKO M., MARCHELEK K., Simulation investigations of the influence of a vibration eliminator on vibrostability of the machine tool-cutting proces system, Zeszyty Naukowe Katedry Mechaniki Stosowanej, No. 13 XXXIX, 279-286, Wisła 2000.
  • 10. SHIRAISHI M., YAMANAKA K., FUJITA H., Optimal control of chatter in turning, International Journal of Machine Tools Manufacture, 31, 1, 31-43, 1991.
  • 11. SMITH S., TŁUSTY J., Stabilizing charter by automatic spindle speed regulation, Annals of CIRP, 41, 1, 433-436, 1992.
  • 12. TANAKA H., OBATA F., MATSUBARA T., MIZUMOTO H., Active chatter suppression of slender boring bar using piezoelectric actuators, JSME 37, 3, 601-606, 1994.
  • 13. TARNG Y.S., LEE E.C., A critical investigation of the phase shift between the inner and outer modulation for the control of machine tool charter, International Journal of Machine Tools Manufacture, 37, 1661-1672, 1997.
  • 14. TARNG Y.S., KAO Y.J., LEE E.C., Chatter suppression in turning operations * with a tuned vibration absorber, Journal of Material Processing Technology, 105, 55-60, 2000.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPB2-0023-0002
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